Structure of jammed ellipse packings with a wide range of aspect ratios
Abstract
Motivated in part by the recent observation of liquid glass in suspensions of ellipsoidal colloids, we examine the structure of jammed ellipse packings over a much wider range of particle aspect ratios () than has been previously attempted. We determine to high precision, and find empirical analytic formulae that predict to within less than 0.1% for all , for three different particle dispersities. We find that the densest packings possess unusually-well-defined nearest-neighbor shells, including both a higher fraction of particles with exactly six contacts and a previously-unreported short-range order marked by ``kinetically suppressed'' regions in their positional-orientational pair correlation function . We also show that the previously-reported approach to isostaticity (coordination number ) with increasing is interrupted and then reversed as local nematic order increases: drops towards 4 as ellipses are more often trapped by contacts with a parallel-oriented neighbor on either side and a perpendicularly-oriented neighbor on either end. Finally we show that (where is the saturated RSA packing density) is nearly -independent for systems that do not develop substantial local hexatic or nematic order during compression.
Keywords
Cite
@article{arxiv.2305.19990,
title = {Structure of jammed ellipse packings with a wide range of aspect ratios},
author = {Sebastian Rocks and Robert S. Hoy},
journal= {arXiv preprint arXiv:2305.19990},
year = {2023}
}